Shen Lin Nan, Dong Changjiang, Liu Huanting, Naismith James H, Hay Ronald T
Centre for Biomolecular Sciences, University of St. Andrews, St. Andrews, Scotland KY16 9ST, UK.
Biochem J. 2006 Jul 15;397(2):279-88. doi: 10.1042/BJ20052030.
The SUMO (small ubiquitin-like modifier)-specific protease SENP1 (sentrin-specific protease 1) can process the three forms of SUMO to their mature forms and deconjugate SUMO from modified substrates. It has been demonstrated previously that SENP1 processed SUMO-1 more efficiently than SUMO-2, but displayed little difference in its ability to deconjugate the different SUMO paralogues from modified substrates. To determine the basis for this substrate specificity, we have determined the crystal structure of SENP1 in isolation and in a transition-state complex with SUMO-2. The interface between SUMO-2 and SENP1 has a relatively poor complementarity, and most of the recognition is determined by interaction between the conserved C-terminus of SUMO-2 and the cleft in the protease. Although SENP1 is rather similar in structure to the related protease SENP2, these proteases have different SUMO-processing activities. Electrostatic analysis of SENP1 in the region where the C-terminal peptide, removed during maturation, would project indicates that it is the electrostatic complementarity between this region of SENP1 and the C-terminal peptides of the various SUMO paralogues that mediates selectivity.
小泛素样修饰物(SUMO)特异性蛋白酶SENP1(类泛素特异性蛋白酶1)可将SUMO的三种形式加工成成熟形式,并使SUMO从修饰底物上解离。先前已证明,SENP1加工SUMO-1的效率高于SUMO-2,但在将不同的SUMO旁系同源物从修饰底物上解离的能力方面差异不大。为了确定这种底物特异性的基础,我们测定了单独的SENP1以及与SUMO-2形成的过渡态复合物的晶体结构。SUMO-2与SENP1之间的界面互补性相对较差,大多数识别是由SUMO-2保守的C末端与蛋白酶中的裂隙之间的相互作用决定的。尽管SENP1在结构上与相关蛋白酶SENP2相当相似,但这些蛋白酶具有不同的SUMO加工活性。对SENP1在成熟过程中去除的C末端肽段所突出的区域进行静电分析表明,正是SENP1的这一区域与各种SUMO旁系同源物的C末端肽段之间的静电互补性介导了选择性。